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laiz [17]
4 years ago
6

Help! PLEASEEE! THANK YOU FOR HELPING BTW!

Mathematics
1 answer:
vivado [14]4 years ago
4 0

Answer:

Use the slope formula and slope-intercept form  y = mx + b to find the equation you get:

y = 8x

If thats not what your looking for then for every 1 (x) you get 8 (y)

Step-by-step explanation:

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Match the definition to the correct term.
beks73 [17]

Answer:

Below.

Step-by-step explanation:

Horizontal axis-x-axis.

Vertical axis-y-axis

Point of intersection between two axis-origin

The horizontal position of a point- the x coordinate.

The vertical position of a point- the y coordinate.

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2 years ago
Complete the missing steps to express in simplest radical form.
Natali [406]
1. yu take the first expression and win over the second
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2 years ago
Factor this expression completely, then place the factors in the proper location on the grid.
andreev551 [17]

Notice that you have a difference of cubes:

\dfrac{x^3}8-\dfrac{y^3}{27}=\left(\dfrac x2\right)^3-\left(\dfrac y3\right)^3

which can be factored using the rule,

a^3-b^3=(a-b)(a^2+ab+b^2)

So,

\dfrac{x^3}8-\dfrac{y^3}{27}=\left(\dfrac x2-\dfrac y3\right)\left(\dfrac{x^2}4+\dfrac{xy}6+\dfrac{y^2}9\right)

and just to make things look nicer, we can pull out 1/6 from the first factor and 1/36 from the second to get

\dfrac{x^3}8-\dfrac{y^3}{27}=\dfrac1{216}(3x-2y)(9x^2+6xy+4y^2)

4 0
4 years ago
Help ngnfkxkdkmdfmkdkfkfmmfkfkdjx​
nadya68 [22]

9514 1404 393

Answer:

  A: 8x +24

  B: not equivalent for any value of x

Step-by-step explanation:

<u>Part A</u>:

The factor of 4 on the outside of parentheses multiplies each term inside:

  M = 4(2x) +4(6)

  M = 8x +24 . . . . . expression equivalent to M

__

<u>Part B</u>:

Expressions M and N are not equivalent for any value of x. They are equivalent if their difference is zero or can be made to be zero. Subtracting N from M, we find the difference to be ...

  M -N = (8x +24) -(8x +10) = 14

There is no value of x that will make the difference of 14 become zero.

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3 years ago
If you want this for $1 would u buy 10,000 of these ?add plz
grigory [225]
I would lol :3 !!
    

XD


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3 years ago
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